
5-Amino-1MQ
Research Peptide | Lyophilized Powder | Batch Tested
For laboratory research use only. Not for human or animal consumption. Insulated shipping · Styrofoam box available.
Product Overview
5-Amino-1MQ ist ein niedermolekularer Inhibitor des Enzyms Nicotinamid-N-Methyltransferase (NNMT), das in hohem Maße im Fettgewebe exprimiert wird. Durch die Blockierung von NNMT wird es als Forschungswerkzeug verwendet, um den zellulären Energiestoffwechsel auf enzymatischer Ebene zu untersuchen.
No published lab tests yet.
Research Information
5-Amino-1MQ wird verwendet, um zu untersuchen, wie die NNMT-Inhibition die zellulären NAD+- und S-Adenosylmethionin-Pools, den Energieverbrauch von Adipozyten und die Lipidspeicherung in Labormodellen beeinflusst. Die Forschung untersucht seine Auswirkungen auf die Regulation metabolischer Enzyme und die Adipozytenbiologie sowie den Vergleich der Erhöhung der NAD+-Verfügbarkeit auf diesem Weg mit direkten NAD+-Ansätzen. Wird ausschließlich für In-vitro- und Laborforschungszwecke geliefert — nicht für den menschlichen oder tierischen Verzehr.
5-Amino-1MQ Research & Studies
What is 5-Amino-1MQ?
5-Amino-1MQ is a small-molecule compound investigated as a selective inhibitor of nicotinamide N-methyltransferase (NNMT). NNMT is an enzyme that methylates nicotinamide using S-adenosylmethionine as a methyl donor and is notably expressed in adipose tissue. In laboratory settings the compound serves as a research tool for probing how NNMT activity shapes cellular energy metabolism and related metabolic pathways. It is supplied strictly for in-vitro and controlled laboratory research use only.
Mechanism of Action
5-Amino-1MQ binds the active site of NNMT and thereby reduces conversion of nicotinamide to 1-methylnicotinamide. This inhibition is studied for its capacity to elevate intracellular NAD+ availability and to alter S-adenosylmethionine pool dynamics. Researchers examine these enzymatic shifts in cultured adipocytes and other model systems to map downstream effects on redox balance and methyl-group metabolism. The compound therefore enables targeted interrogation of NNMT-dependent metabolic nodes.
Primary Areas of Research
Laboratory investigations focus on how NNMT inhibition with 5-Amino-1MQ modulates adipocyte energy expenditure and lipid-storage programs. Studies also compare the metabolic consequences of raising NAD+ through NNMT blockade versus direct NAD+ precursor supplementation. Additional work explores regulation of metabolic enzymes and transcriptional networks that respond to altered NAD+ and SAM levels in cell-culture models. These lines of inquiry remain confined to in-vitro and non-clinical experimental systems.
Key Research Findings
Published cell-based work indicates that NNMT inhibition by 5-Amino-1MQ can increase NAD+ levels and influence markers of energy expenditure in adipocyte models. Parallel observations describe shifts in lipid droplet dynamics and expression of enzymes linked to fatty-acid oxidation under controlled culture conditions. Findings are used to refine hypotheses about the contribution of NNMT to cellular metabolic set-points. All reported outcomes derive from laboratory model systems and do not extend beyond research contexts.
Research Handling & Considerations
5-Amino-1MQ is intended solely for qualified laboratory personnel conducting in-vitro experiments. Standard chemical-handling practices, including appropriate personal protective equipment and controlled storage conditions, apply. Researchers should verify compound identity, purity, and solvent compatibility prior to assay use. The material is not for human or animal consumption and carries no approved research-use claims beyond enzymatic and cellular studies.
Frequently Asked Questions
It is studied as a small-molecule inhibitor of nicotinamide N-methyltransferase (NNMT), an enzyme that methylates nicotinamide.
Learn more
Read research overviews, COA verification guides, and reconstitution notes in our Knowledge Hub.
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